Searched for: subject%3A%22CALUX%22
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Kroese, E.D. (author), Bosgra, S. (author), Buist, H.E. (author), Lewin, G. (author), van der Linden, S.C. (author), Man, H.Y. (author), Piersma, A.H. (author), Rorije, E. (author), Schulpen, S.H.W. (author), Schwarz, M. (author), Uibel, F. (author), van Vugt-Lussenburg, B.M.A. (author), Wolterbeek, A.P.M. (author), van der Burg, B. (author)
Previously we showed a battery consisting of CALUX transcriptional activation assays, the ReProGlo assay, and the embryonic stem cell test, and zebrafish embryotoxicity assay as 'apical' tests to correctly predict developmental toxicity for 11 out of 12 compounds, and to explain the one false negative [7]. Here we report on applying this battery...
article 2015
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Piersma, A.H. (author), Bosgra, S. (author), van Duursen, M.B.M. (author), Hermsen, S.A.B. (author), Jonker, L.R.A. (author), Kroese, E.D. (author), van der Linden, S.C. (author), Man, H. (author), Roelofs, M.J.E. (author), Schulpen, S.H.W. (author), Schwarz, M. (author), Uibel, F. (author), van Vugt-Lussenburg, B.M.A. (author), Westerhout, J. (author), Wolterbeek, A.P.M. (author), van der Burg, B. (author)
The application of alternative methods in developmental and reproductive toxicology is challenging in view of the complexity of mechanisms involved. A battery of complementary test systems may provide a better prediction of developmental and reproductive toxicity than single assays. We tested twelve compounds with varying mechanisms of toxic...
article 2013